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NSR database version of April 11, 2024.

Search: Author = M.Batinic

Found 10 matches.

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2010BA38      Phys.Rev. C 82, 038203 (2010)

M.Batinic, S.Ceci, A.Svarc, B.Zauner

Poles of the Zagreb analysis partial-wave T matrices

doi: 10.1103/PhysRevC.82.038203
Citations: PlumX Metrics

2001TI01      Phys.Rev. D63, 052001 (2001)

W.B.Tippens, V.Abaev, M.Batinic, V.Bekrenev, W.J.Briscoe, R.E.Chrien, M.Clajus, D.Isenhower, N.Kozlenko, S.Kruglov, M.J.Leitch, A.Marusic, T.Moriwaki, T.Morrison, B.M.K.Nefkens, J.C.Peng, P.H.Pile, J.W.Price, D.Rigsby, M.E.Sadler, R.Sawafta, I.Slaus, H.Seyfarth, A.Starostin, I.Supek, R.J.Sutter, A.Svarc, D.B.White

Measurement of Charge Symmetry Breaking by the Comparison of π+d → ppη with π-d → nnη

NUCLEAR REACTIONS 2H(π+, 2pX), (π-, 2nX), E at 655-752 MeV/c; measured η meson production associated invariant mass spectra, σ; deduced charge symmetry breaking features.

doi: 10.1103/PhysRevD.63.052001
Citations: PlumX Metrics

1998BA39      Phys.Scr. 58, 15 (1998)

M.Batinic, I.Dadic, I.Slaus, A.Svarc, B.M.K.Nefkens, T.-S.H.Lee

The New Determination of the ηN S-Wave Scattering Length from a Three-Channel, Multi-Resonance Amplitude Analysis

1997BA65      Phys.Scr. 56, 321 (1997)

M.Batinic, A.Svarc, T.-S.H.Lee

Near Threshold η Production in Proton-Proton Collisions

NUCLEAR REACTIONS 1H(p, X), E=1260-1360 MeV; analyzed σ; deduced η production mechanism features.

1996BA90      Few-Body Systems 20, 69 (1996)

M.Batinic, A.Svarc

Complete Analysis of the ηN S-Wave Scattering-Length Values and Its Natural Limitations in Any Single-Resonance Model

NUCLEAR REACTIONS 1H(π-, X), E ≈ thershold; calculated η(nucleon)-scattering length, production σ. Single resonance reduction of multi-resonance model.

1995BA33      Phys.Rev. C51, 2310 (1995); Erratum Phys.Rev. C57, 1004 (1998)

M.Batinic, I.Slaus, A.Svarc, B.M.K.Nefkens

πN → (Eta)N and (Eta)N → (Eta)N Partial-Wave T Matrices in a Coupled, Three-Channel Model

NUCLEAR REACTIONS 1H(π-, X), E ≤ 2500 MeV; analyzed σ(E), σ(θ) along with πN-, (eta)N-elastic scattering data. Three-coupled-channels model.

doi: 10.1103/PhysRevC.51.2310
Citations: PlumX Metrics

1995BA77      Phys.Rev. C52, 2188 (1995)

M.Batinic, I.Slaus, A.Svarc

ηN S-Wave Scattering Length in a Three-Coupled-Channel, Multiresonance, Unitary Model

doi: 10.1103/PhysRevC.52.2188
Citations: PlumX Metrics

1994BA53      Phys.Rev. C50, 1300 (1994)

M.Batinic, T.-S.H.Lee, M.P.Locher, Y.Lu, A.Svarc

Off-Shell Effects for the Reaction pp → πd at High Energies

NUCLEAR REACTIONS 1H(polarized p, π+), E=1.3-2.4 GeV; analyzed σ(θ), analyzing power data; deduced pp distortion role. Relativistic meson rescattering model.

doi: 10.1103/PhysRevC.50.1300
Citations: PlumX Metrics

1993SL02      Acta Phys.Pol. B24, 1857 (1993)

I.Slaus, M.Batinic, A.Marusic, I.Supek, A.Svarc


1986LO02      Czech.J.Phys. B36, 230 (1986)

M.P.Locher, A.Svarc, M.Batinic

The Reaction pp-πd in the GeV Region

NUCLEAR REACTIONS 2H(p, π+), E=0.525, 0.87, 1.52 GeV; calculated σ(θ). 1H(p, π+), E=1-4 GeV; calculated all helicity amplitudes. Relativistic model.

doi: 10.1007/BF01597151
Citations: PlumX Metrics

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